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Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft

[Image: see text] Accumulating experimental evidence indicates that overexpression of the oncogenic receptor tyrosine kinase, Axl, plays a key role in the tumorigenesis and metastasis of various types of cancer. The objective of this study is to design a novel imaging probe based on the monoclonal a...

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Autores principales: Liu, Shuanglong, Li, Dan, Guo, Jiacong, Canale, Nicolette, Li, Xiuqing, Liu, Ren, Krasnoperov, Valery, Gill, Parkash S., Conti, Peter S., Shan, Hong, Li, Zibo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4224514/
https://www.ncbi.nlm.nih.gov/pubmed/24978094
http://dx.doi.org/10.1021/mp500307t
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author Liu, Shuanglong
Li, Dan
Guo, Jiacong
Canale, Nicolette
Li, Xiuqing
Liu, Ren
Krasnoperov, Valery
Gill, Parkash S.
Conti, Peter S.
Shan, Hong
Li, Zibo
author_facet Liu, Shuanglong
Li, Dan
Guo, Jiacong
Canale, Nicolette
Li, Xiuqing
Liu, Ren
Krasnoperov, Valery
Gill, Parkash S.
Conti, Peter S.
Shan, Hong
Li, Zibo
author_sort Liu, Shuanglong
collection PubMed
description [Image: see text] Accumulating experimental evidence indicates that overexpression of the oncogenic receptor tyrosine kinase, Axl, plays a key role in the tumorigenesis and metastasis of various types of cancer. The objective of this study is to design a novel imaging probe based on the monoclonal antibody, h173, for microPET imaging of Axl expression in human lung cancer. A bifunctional chelator, DOTA, was conjugated to h173, followed by radiolabeling with (64)Cu. The binding of DOTA-h173 to the Axl receptor was first evaluated by a cell uptake assay and flow cytometry analysis using human lung cancer cell lines. The probe (64)Cu-DOTA-h173 was further evaluated by microPET imaging, and ex vivo histology studies in the Axl-positive A549 tumors. In vitro cellular study showed that Axl probe, (64)Cu-DOTA-h173, was highly immuno-reactive with A549 cells. Western blot analysis confirmed that Axl is highly expressed in the A549 cell line. For microPET imaging, the A549 xenografts demonstrated a significantly higher (64)Cu-DOTA-h173 uptake compared to the NCI-H249 xenograft (a negative control model). Furthermore, (64)Cu-DOTA-h173 uptake in A549 is significantly higher than that of (64)Cu-DOTA-hIgG. Immuno-fluorescence staining was consistent with the in vivo micro-PET imaging results. In conclusion, (64)Cu-DOTA-h173 could be potentially used as a probe for noninvasive imaging of Axl expression, which could collect important information regarding tumor response to Axl-targeted therapeutic interventions.
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spelling pubmed-42245142015-06-30 Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft Liu, Shuanglong Li, Dan Guo, Jiacong Canale, Nicolette Li, Xiuqing Liu, Ren Krasnoperov, Valery Gill, Parkash S. Conti, Peter S. Shan, Hong Li, Zibo Mol Pharm [Image: see text] Accumulating experimental evidence indicates that overexpression of the oncogenic receptor tyrosine kinase, Axl, plays a key role in the tumorigenesis and metastasis of various types of cancer. The objective of this study is to design a novel imaging probe based on the monoclonal antibody, h173, for microPET imaging of Axl expression in human lung cancer. A bifunctional chelator, DOTA, was conjugated to h173, followed by radiolabeling with (64)Cu. The binding of DOTA-h173 to the Axl receptor was first evaluated by a cell uptake assay and flow cytometry analysis using human lung cancer cell lines. The probe (64)Cu-DOTA-h173 was further evaluated by microPET imaging, and ex vivo histology studies in the Axl-positive A549 tumors. In vitro cellular study showed that Axl probe, (64)Cu-DOTA-h173, was highly immuno-reactive with A549 cells. Western blot analysis confirmed that Axl is highly expressed in the A549 cell line. For microPET imaging, the A549 xenografts demonstrated a significantly higher (64)Cu-DOTA-h173 uptake compared to the NCI-H249 xenograft (a negative control model). Furthermore, (64)Cu-DOTA-h173 uptake in A549 is significantly higher than that of (64)Cu-DOTA-hIgG. Immuno-fluorescence staining was consistent with the in vivo micro-PET imaging results. In conclusion, (64)Cu-DOTA-h173 could be potentially used as a probe for noninvasive imaging of Axl expression, which could collect important information regarding tumor response to Axl-targeted therapeutic interventions. American Chemical Society 2014-06-30 2014-11-03 /pmc/articles/PMC4224514/ /pubmed/24978094 http://dx.doi.org/10.1021/mp500307t Text en Copyright © 2014 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Liu, Shuanglong
Li, Dan
Guo, Jiacong
Canale, Nicolette
Li, Xiuqing
Liu, Ren
Krasnoperov, Valery
Gill, Parkash S.
Conti, Peter S.
Shan, Hong
Li, Zibo
Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft
title Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft
title_full Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft
title_fullStr Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft
title_full_unstemmed Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft
title_short Design, Synthesis, and Validation of Axl-Targeted Monoclonal Antibody Probe for microPET Imaging in Human Lung Cancer Xenograft
title_sort design, synthesis, and validation of axl-targeted monoclonal antibody probe for micropet imaging in human lung cancer xenograft
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4224514/
https://www.ncbi.nlm.nih.gov/pubmed/24978094
http://dx.doi.org/10.1021/mp500307t
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